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DRA Systems: OR-Objects 1.2.4: Class  BLAS3
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drasys.or.linear.blas</FONT>
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Class  BLAS3</H2>
<PRE>
java.lang.Object
  |
  +--<B>drasys.or.linear.blas.BLAS3</B>
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<HR>
<DL>
<DT>public class <B>BLAS3</B><DT>extends java.lang.Object<DT>implements <A HREF="../../../../drasys/or/linear/blas/BLAS3I.html">BLAS3I</A></DL>

<P>
Serial implementation of the BLAS3.
See <A HREF="../../../../drasys/or/linear/blas/BLAS3I.html"><CODE>BLAS3I</CODE></A> for more details.
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<TD><CODE><B><A HREF="../../../../drasys/or/linear/blas/BLAS3.html#BLAS3()">BLAS3</A></B>()</CODE>

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<CODE>&nbsp;void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../drasys/or/linear/blas/BLAS3.html#cgemm(int, int, int, drasys.or.ComplexI, float[], int, int, int, float[], int, int, int, drasys.or.ComplexI, float[], int, int, int)">cgemm</A></B>(int&nbsp;m,
      int&nbsp;n,
      int&nbsp;k,
      <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;alpha,
      float[]&nbsp;A,
      int&nbsp;begA,
      int&nbsp;incAi,
      int&nbsp;incAj,
      float[]&nbsp;B,
      int&nbsp;begB,
      int&nbsp;incBi,
      int&nbsp;incBj,
      <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;beta,
      float[]&nbsp;C,
      int&nbsp;begC,
      int&nbsp;incCi,
      int&nbsp;incCj)</CODE>

<BR>
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;Computes: C = alpha*A*B + beta*C.</TD>
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<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE>&nbsp;void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../drasys/or/linear/blas/BLAS3.html#dgemm(int, int, int, double, double[], int, int, int, double[], int, int, int, double, double[], int, int, int)">dgemm</A></B>(int&nbsp;m,
      int&nbsp;n,
      int&nbsp;k,
      double&nbsp;alpha,
      double[]&nbsp;A,
      int&nbsp;begA,
      int&nbsp;incAi,
      int&nbsp;incAj,
      double[]&nbsp;B,
      int&nbsp;begB,
      int&nbsp;incBi,
      int&nbsp;incBj,
      double&nbsp;beta,
      double[]&nbsp;C,
      int&nbsp;begC,
      int&nbsp;incCi,
      int&nbsp;incCj)</CODE>

<BR>
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;Computes: C = alpha*A*B + beta*C.</TD>
</TR>
<TR BGCOLOR="white" CLASS="TableRowColor">
<TD ALIGN="right" VALIGN="top" WIDTH="1%"><FONT SIZE="-1">
<CODE>&nbsp;void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../drasys/or/linear/blas/BLAS3.html#sgemm(int, int, int, float, float[], int, int, int, float[], int, int, int, float, float[], int, int, int)">sgemm</A></B>(int&nbsp;m,
      int&nbsp;n,
      int&nbsp;k,
      float&nbsp;alpha,
      float[]&nbsp;A,
      int&nbsp;begA,
      int&nbsp;incAi,
      int&nbsp;incAj,
      float[]&nbsp;B,
      int&nbsp;begB,
      int&nbsp;incBi,
      int&nbsp;incBj,
      float&nbsp;beta,
      float[]&nbsp;C,
      int&nbsp;begC,
      int&nbsp;incCi,
      int&nbsp;incCj)</CODE>

<BR>
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;Computes: C = alpha*A*B + beta*C.</TD>
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<CODE>&nbsp;void</CODE></FONT></TD>
<TD><CODE><B><A HREF="../../../../drasys/or/linear/blas/BLAS3.html#zgemm(int, int, int, drasys.or.ComplexI, double[], int, int, int, double[], int, int, int, drasys.or.ComplexI, double[], int, int, int)">zgemm</A></B>(int&nbsp;m,
      int&nbsp;n,
      int&nbsp;k,
      <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;alpha,
      double[]&nbsp;A,
      int&nbsp;begA,
      int&nbsp;incAi,
      int&nbsp;incAj,
      double[]&nbsp;B,
      int&nbsp;begB,
      int&nbsp;incBi,
      int&nbsp;incBj,
      <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;beta,
      double[]&nbsp;C,
      int&nbsp;begC,
      int&nbsp;incCi,
      int&nbsp;incCj)</CODE>

<BR>
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;Computes: C = alpha*A*B + beta*C.</TD>
</TR>
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<TD><B>Methods inherited from class java.lang.Object</B></TD>
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<TR BGCOLOR="white" CLASS="TableRowColor">
<TD><CODE>clone, 
equals, 
finalize, 
getClass, 
hashCode, 
notify, 
notifyAll, 
toString, 
wait, 
wait, 
wait</CODE></TD>
</TR>
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<A NAME="BLAS3()"><!-- --></A><H3>
BLAS3</H3>
<PRE>
public <B>BLAS3</B>()</PRE>
<DL>
</DL>

<!-- ============ METHOD DETAIL ========== -->

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<A NAME="dgemm(int, int, int, double, double[], int, int, int, double[], int, int, int, double, double[], int, int, int)"><!-- --></A><H3>
dgemm</H3>
<PRE>
public void <B>dgemm</B>(int&nbsp;m,
                  int&nbsp;n,
                  int&nbsp;k,
                  double&nbsp;alpha,
                  double[]&nbsp;A,
                  int&nbsp;begA,
                  int&nbsp;incAi,
                  int&nbsp;incAj,
                  double[]&nbsp;B,
                  int&nbsp;begB,
                  int&nbsp;incBi,
                  int&nbsp;incBj,
                  double&nbsp;beta,
                  double[]&nbsp;C,
                  int&nbsp;begC,
                  int&nbsp;incCi,
                  int&nbsp;incCj)
           throws <A HREF="../../../../drasys/or/linear/blas/BlasException.html">BlasException</A></PRE>
<DL>
<DD>Computes: C = alpha*A*B + beta*C.
The transpose of 'A' can be used by swapping 'incAi' and 'incAj'. 
The transpose of 'B' can be used by swapping 'incBi' and 'incBj'.<DD><DL>
<DT><B>Specified by: </B><DD><A HREF="../../../../drasys/or/linear/blas/BLAS3I.html#dgemm(int, int, int, double, double[], int, int, int, double[], int, int, int, double, double[], int, int, int)">dgemm</A> in interface <A HREF="../../../../drasys/or/linear/blas/BLAS3I.html">BLAS3I</A></DL>
</DD>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>m</CODE> - number of rows in 'A' and 'C'<DD><CODE>n</CODE> - number of columns in 'B' and 'C'<DD><CODE>k</CODE> - number of columns in 'A' and rows in 'B'<DD><CODE>alpha</CODE> - constant scaler<DD><CODE>A</CODE> - the matrix 'A' in contiguous format<DD><CODE>begA</CODE> - offset of the first element of 'A'<DD><CODE>incAi</CODE> - row increment for matrix 'A'<DD><CODE>incAj</CODE> - column increment for matrix 'A'<DD><CODE>B</CODE> - the matrix 'B' in contiguous format<DD><CODE>begB</CODE> - offset of the first element of 'B'<DD><CODE>incBi</CODE> - row increment for matrix 'B'<DD><CODE>incBj</CODE> - column increment for matrix 'B'<DD><CODE>beta</CODE> - constant scaler<DD><CODE>C</CODE> - the matrix 'C' in contiguous format<DD><CODE>begC</CODE> - offset of the first element of 'B'<DD><CODE>incCi</CODE> - row increment for matrix 'B'<DD><CODE>incCj</CODE> - column increment for matrix 'B'</DL>
</DD>
</DL>
<HR>

<A NAME="sgemm(int, int, int, float, float[], int, int, int, float[], int, int, int, float, float[], int, int, int)"><!-- --></A><H3>
sgemm</H3>
<PRE>
public void <B>sgemm</B>(int&nbsp;m,
                  int&nbsp;n,
                  int&nbsp;k,
                  float&nbsp;alpha,
                  float[]&nbsp;A,
                  int&nbsp;begA,
                  int&nbsp;incAi,
                  int&nbsp;incAj,
                  float[]&nbsp;B,
                  int&nbsp;begB,
                  int&nbsp;incBi,
                  int&nbsp;incBj,
                  float&nbsp;beta,
                  float[]&nbsp;C,
                  int&nbsp;begC,
                  int&nbsp;incCi,
                  int&nbsp;incCj)
           throws <A HREF="../../../../drasys/or/linear/blas/BlasException.html">BlasException</A></PRE>
<DL>
<DD>Computes: C = alpha*A*B + beta*C.
The transpose of 'A' can be used by swapping 'incAi' and 'incAj'. 
The transpose of 'B' can be used by swapping 'incBi' and 'incBj'.<DD><DL>
<DT><B>Specified by: </B><DD><A HREF="../../../../drasys/or/linear/blas/BLAS3I.html#sgemm(int, int, int, float, float[], int, int, int, float[], int, int, int, float, float[], int, int, int)">sgemm</A> in interface <A HREF="../../../../drasys/or/linear/blas/BLAS3I.html">BLAS3I</A></DL>
</DD>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>m</CODE> - number of rows in 'A' and 'C'<DD><CODE>n</CODE> - number of columns in 'B' and 'C'<DD><CODE>k</CODE> - number of columns in 'A' and rows in 'B'<DD><CODE>alpha</CODE> - constant scaler<DD><CODE>A</CODE> - the matrix 'A' in contiguous format<DD><CODE>begA</CODE> - offset of the first element of 'A'<DD><CODE>incAi</CODE> - row increment for matrix 'A'<DD><CODE>incAj</CODE> - column increment for matrix 'A'<DD><CODE>B</CODE> - the matrix 'B' in contiguous format<DD><CODE>begB</CODE> - offset of the first element of 'B'<DD><CODE>incBi</CODE> - row increment for matrix 'B'<DD><CODE>incBj</CODE> - column increment for matrix 'B'<DD><CODE>beta</CODE> - constant scaler<DD><CODE>C</CODE> - the matrix 'C' in contiguous format<DD><CODE>begC</CODE> - offset of the first element of 'B'<DD><CODE>incCi</CODE> - row increment for matrix 'B'<DD><CODE>incCj</CODE> - column increment for matrix 'B'</DL>
</DD>
</DL>
<HR>

<A NAME="zgemm(int, int, int, drasys.or.ComplexI, double[], int, int, int, double[], int, int, int, drasys.or.ComplexI, double[], int, int, int)"><!-- --></A><H3>
zgemm</H3>
<PRE>
public void <B>zgemm</B>(int&nbsp;m,
                  int&nbsp;n,
                  int&nbsp;k,
                  <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;alpha,
                  double[]&nbsp;A,
                  int&nbsp;begA,
                  int&nbsp;incAi,
                  int&nbsp;incAj,
                  double[]&nbsp;B,
                  int&nbsp;begB,
                  int&nbsp;incBi,
                  int&nbsp;incBj,
                  <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;beta,
                  double[]&nbsp;C,
                  int&nbsp;begC,
                  int&nbsp;incCi,
                  int&nbsp;incCj)
           throws <A HREF="../../../../drasys/or/linear/blas/BlasException.html">BlasException</A></PRE>
<DL>
<DD>Computes: C = alpha*A*B + beta*C.
The transpose of 'A' can be used by swapping 'incAi' and 'incAj'. 
The transpose of 'B' can be used by swapping 'incBi' and 'incBj'.<DD><DL>
<DT><B>Specified by: </B><DD><A HREF="../../../../drasys/or/linear/blas/BLAS3I.html#zgemm(int, int, int, drasys.or.ComplexI, double[], int, int, int, double[], int, int, int, drasys.or.ComplexI, double[], int, int, int)">zgemm</A> in interface <A HREF="../../../../drasys/or/linear/blas/BLAS3I.html">BLAS3I</A></DL>
</DD>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>m</CODE> - number of rows in 'A' and 'C'<DD><CODE>n</CODE> - number of columns in 'B' and 'C'<DD><CODE>k</CODE> - number of columns in 'A' and rows in 'B'<DD><CODE>alpha</CODE> - constant scaler<DD><CODE>A</CODE> - the matrix 'A' in contiguous format<DD><CODE>begA</CODE> - offset of the first element of 'A'<DD><CODE>incAi</CODE> - row increment for matrix 'A'<DD><CODE>incAj</CODE> - column increment for matrix 'A'<DD><CODE>B</CODE> - the matrix 'B' in contiguous format<DD><CODE>begB</CODE> - offset of the first element of 'B'<DD><CODE>incBi</CODE> - row increment for matrix 'B'<DD><CODE>incBj</CODE> - column increment for matrix 'B'<DD><CODE>beta</CODE> - constant scaler<DD><CODE>C</CODE> - the matrix 'C' in contiguous format<DD><CODE>begC</CODE> - offset of the first element of 'B'<DD><CODE>incCi</CODE> - row increment for matrix 'B'<DD><CODE>incCj</CODE> - column increment for matrix 'B'</DL>
</DD>
</DL>
<HR>

<A NAME="cgemm(int, int, int, drasys.or.ComplexI, float[], int, int, int, float[], int, int, int, drasys.or.ComplexI, float[], int, int, int)"><!-- --></A><H3>
cgemm</H3>
<PRE>
public void <B>cgemm</B>(int&nbsp;m,
                  int&nbsp;n,
                  int&nbsp;k,
                  <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;alpha,
                  float[]&nbsp;A,
                  int&nbsp;begA,
                  int&nbsp;incAi,
                  int&nbsp;incAj,
                  float[]&nbsp;B,
                  int&nbsp;begB,
                  int&nbsp;incBi,
                  int&nbsp;incBj,
                  <A HREF="../../../../drasys/or/ComplexI.html">ComplexI</A>&nbsp;beta,
                  float[]&nbsp;C,
                  int&nbsp;begC,
                  int&nbsp;incCi,
                  int&nbsp;incCj)
           throws <A HREF="../../../../drasys/or/linear/blas/BlasException.html">BlasException</A></PRE>
<DL>
<DD>Computes: C = alpha*A*B + beta*C.
The transpose of 'A' can be used by swapping 'incAi' and 'incAj'. 
The transpose of 'B' can be used by swapping 'incBi' and 'incBj'.<DD><DL>
<DT><B>Specified by: </B><DD><A HREF="../../../../drasys/or/linear/blas/BLAS3I.html#cgemm(int, int, int, drasys.or.ComplexI, float[], int, int, int, float[], int, int, int, drasys.or.ComplexI, float[], int, int, int)">cgemm</A> in interface <A HREF="../../../../drasys/or/linear/blas/BLAS3I.html">BLAS3I</A></DL>
</DD>
<DD><DL>
<DT><B>Parameters:</B><DD><CODE>m</CODE> - number of rows in 'A' and 'C'<DD><CODE>n</CODE> - number of columns in 'B' and 'C'<DD><CODE>k</CODE> - number of columns in 'A' and rows in 'B'<DD><CODE>alpha</CODE> - constant scaler<DD><CODE>A</CODE> - the matrix 'A' in contiguous format<DD><CODE>begA</CODE> - offset of the first element of 'A'<DD><CODE>incAi</CODE> - row increment for matrix 'A'<DD><CODE>incAj</CODE> - column increment for matrix 'A'<DD><CODE>B</CODE> - the matrix 'B' in contiguous format<DD><CODE>begB</CODE> - offset of the first element of 'B'<DD><CODE>incBi</CODE> - row increment for matrix 'B'<DD><CODE>incBj</CODE> - column increment for matrix 'B'<DD><CODE>beta</CODE> - constant scaler<DD><CODE>C</CODE> - the matrix 'C' in contiguous format<DD><CODE>begC</CODE> - offset of the first element of 'B'<DD><CODE>incCi</CODE> - row increment for matrix 'B'<DD><CODE>incCj</CODE> - column increment for matrix 'B'</DL>
</DD>
</DL>
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